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San Francisco Paper - The Fritz Engineering and the Coxe Mining Laboratories of Lehigh UniversityBy Joseph Daniels
The Fritz Engineering Laboratory was built under the direction of John Fritz, and presented by him to the University. A view of the building, looking east, is shown in Fig. 1. The building was started
Jan 1, 1912
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The Transformation Of CobaltBy J. L. Tokich, A. R. Troiano
INTRODUCTION SINCE 1921, when Hull' discovered that cobalt can exist in the face-centered cubic and hexagonal close-packed modifications, the transitions that occur in cobalt have been extensi
Jan 1, 1948
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Designing The Sacaton ConcentratorBy Dennis K. Mortensen
Startup of the 9000 tpd Sacaton concentrator is expected to increase Asarco's domestic copper concentrate capacity by 21%. The plant site is located due west of the mining operations, consisting
Jan 11, 1974
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Institute of Metals Division - Constitution of Nickel-Rich Quaternary Alloys of the Ni-Cr-Ti-Al SystemBy A. Taylor
NICKEL-RICH alloys hardened with small additions of titanium and aluminum and centered around that region of face-centered-cubic primary solid solution, 7, where the atomic ratio of nickel chromium is
Jan 1, 1957
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Part VII - Communications - Computerized Plastic Deformation by SlipBy G. Y. Chin, M. T. Dolan, W. L. Mammel
In the case of plastic deformation by slip, von Mises' showed that an arbitrary shape change of a crystal generally requires the activation of five independent slip systems. The selection of the
Jan 1, 1968
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Papers - Equilibrium Relations in Aluminum-magnesium-zinc Alloys of High Purity (With Discussion)By W. L. Fink, L. A. Willey
This paper is the nineteenth of a series from the Aluminum Research Laboratories, presenting the results of the investigations of equilibrium relations in aluminum-base alloys made from electrolytical
Jan 1, 1937
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Mining - Comments on Evaluation of the Water Problem at Eureka. Nev. (With Discussion)By C. B. E. Douglas
The following analysis was stimulated by a previous article on evaluation of the water problem at Eureka, Nev., which describes a method using formulas especially devised to calculate flow potential o
Jan 1, 1956
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Physical And Chemical Factors In Copper Dump LeachingBy Yoon T. Auck, Milton E. Wadsworth
Column leach studies of two low grade prophyry copper ores were made with variables of size, flow rate, pH, drainage rate and tempature. Evidence is presented to show that, in some types of ores, sulf
Jan 1, 1973
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Barium Minerals (e1aeef57-f42c-41da-abfb-e3c4fc907150)By Donald A. Brobst
The minerals barite (BaSO4) and witherite (BaCO3) are the chief sources of the element barium and its compounds needed for many industrial processes and products. Barite, the principal ore mineral, is
Jan 1, 1960
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Reservoir Engineering- Laboratory Research - Flow of Polymer Solutions Through Porous MediaBy D. E. Menzie, D. L. Dauben
This paper discusses the physical parameters involved in the slow flow of high molecular weight polymer solutions in porous media. The interacting effects of polymer properties and porous media proper
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Institute of Metals Division - Role of Grain Boundaries in the Ductile-Brittle Transition Behavior of Bcc Refractory MetalsBy C. L. Meyers, A. V. Levy, G. Y. Onoda, R. J. Kotfila
This paper presents the hypothesis that solid-solution hardening of regions in the order of tens of angstroms thick along grain boundaries is the most important mechanism controlling the ductile -brit
Jan 1, 1965
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Symposia - Symposium on Hardenability - The Hardenability Concept (Metals Tech., Jan. 1946, T. P. 1926 with discussion)By J. H. Hollomon, L. D. Jaffe
The hardenability concept has become widely used during the last few years for the choice and substitution of steels. Before the work of Grossmann,1 the systems for predicting hardenability from chemi
Jan 1, 1947
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Symposia - Symposium on Hardenability - The Hardenability Concept (Metals Tech., Jan. 1946, T. P. 1926 with discussion)By L. D. Jaffe, J. H. Hollomon
The hardenability concept has become widely used during the last few years for the choice and substitution of steels. Before the work of Grossmann,1 the systems for predicting hardenability from chemi
Jan 1, 1947
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Books For EngineersBy Brian Mason
Wire Ropes in Mines. Proceedings of a conference held at Ashorne Hill, Leamington Spa, Warwickshire, September, 1950. Published by the Institution of Mining and Metallurgy, Salisbury House, London, 19
Jan 1, 1952
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Papers - A New Method of Top Slicing at Kipushi, Katanga, Belgian Congo (T.P. 1078, with discussion)By G. Van Esbroeck, M. Van Weyenbergh
The copper mines of the Katanga region in the Belgian Congo lie along the same mineralized belt as those of Northern Rhodesia. There are two distinct types of deposits in that belt, the dolomitic and
Jan 1, 1940
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Papers - A New Method of Top Slicing at Kipushi, Katanga, Belgian Congo (T.P. 1078, with discussion)By M. Van Weyenbergh, G. Van Esbroeck
The copper mines of the Katanga region in the Belgian Congo lie along the same mineralized belt as those of Northern Rhodesia. There are two distinct types of deposits in that belt, the dolomitic and
Jan 1, 1940
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New York Paper - The Main Mineral Zone of the Santa Eulalia District, ChihuahuaBy Basil Prescott
Resume.—The district of Santa Eulalia lies 12 miles to the southeast of the city of Chihuahua, Mexico. The ore deposits occur in a Cretaceous limestone of unknown thickness, overlain by a series of rh
Jan 1, 1915
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Minerals Beneficiation In 1964 – Basic ScienceBy F. T. Davis
Many contributors have added to the fund of knowledge in the basic sciences related to mineral dressing during the past year. During 1964, the French edition of the Proceedings of the VIth Internation
Jan 2, 1965
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Choice of Geophysical MethodsBy FRANK RIEBERS
IN DISCUSSING the selection of a geophysical method, much of what the writer will say is applicable to any of the various methods and to their use in prospecting, whether for oil or for other minerals
Jan 1, 1930
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Subsidence and Outbursts - Instantaneous Outbursts of Carbon Dioxide in Coal Mines in Lower Silesia, Germany (With Discussion)By P. A. C. Wilson
Instantaneous outbursts of carbon dioxide in coal mines have occurred in Germany only in one part of the Waldenburg-Neurode mining district.' This mining region comprises the northeastern fold of
Jan 1, 1931